High-Momentum Jet Flames at Elevated Pressure, C: Statistical Distribution of Thermochemical States Obtained From Laser-Raman Measurements

Author:

Ax Holger1,Lammel Oliver1,Lückerath Rainer1,Severin Michael1

Affiliation:

1. German Aerospace Center (DLR), Institute of Combustion Technology, Pfaffenwaldring 38-40, Stuttgart D-70569, Germany

Abstract

Abstract A detailed investigation on flame structures and stabilization mechanisms of confined high momentum jet flames by one-dimensional (1D)-laser Raman measurements is presented. The flames were operated with natural gas (NG) at gas turbine relevant conditions in an optically accessible high-pressure test rig. The generic burner represents a full scale single nozzle of a high temperature FLOX® gas turbine combustor including a pilot stage. 1D-laser Raman measurements were performed on both an unpiloted and a piloted flame and evaluated on a single shot basis revealing the thermochemical states from unburned inflow conditions to burned hot gas in terms of average and statistical values of the major species concentrations, the mixture fraction and the temperature. The results show a distinct difference in the flame stabilization mechanism between the unpiloted and the piloted case. The former is apparently driven by strong mixing of fresh unburned gas and recirculated hot burned gas that eventually causes autoignition. The piloted flame is stabilized by the pilot stage followed by turbulent flame propagation. The findings help to understand the underlying combustion mechanisms and to further develop gas turbine burners following the FLOX concept.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference21 articles.

1. Complex Chemistry Simulation of FLOX®: Flameless Oxidation Combustion;Clean Air Int. J. Energy Clean Environ.,2007

2. FLOX® Combustion at High Pressure With Different Fuel Compositions;ASME J. Eng. Gas Turbines Power,2008

3. Analysis of the Pollutant Formation in the FLOX® Combustion;ASME J. Eng. Gas Turbines Power,2008

4. Investigation of Flame Stabilization in a High-Pressure Multi-Jet Combustor by Laser Measurement Techniques,2014

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